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Robust and autonomous dc bus voltage control and stability analysis for a dc microgrid

机译:直流微电网的鲁棒,自主的直流母线电压控制和稳定性分析

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In this paper, a novel approach for robust and autonomous dc bus voltage control in a dc microgrid has been proposed. A nonlinear disturbance observer (NDO) only with local information is designed firstly to track power disturbances caused by load changing or the volatility of the renewable sources in the dc microgrid. With the observer, voltage droop method has been adopted in achieving power sharing and autonomous operation of a dc microgrid. Furthermore, an improved current feedforward is developed to suppress wide fluctuations of the dc bus voltage during transients. In addition, a notch filter has been used to effectively eliminate the second harmonic ripple components in the inductor currents of the droop control units to improve the power quality. The effectiveness of the proposed control scheme is verified on a laboratory prototype including two bidirectional dc-dc converters supplied by two programmable dc power supply systems, a dc load with a resistor connected to the dc bus via a buck type dc-dc converter and a three-phase unbalanced ac load.
机译:在本文中,提出了一种在直流微电网中进行鲁棒和自主的直流总线电压控制的新方法。首先设计仅具有本地信息的非线性干扰观测器(NDO),以跟踪由负载变化或直流微电网中可再生资源的挥发性引起的功率干扰。与观察者一起,电压下垂方法已被用于实现直流微电网的功率共享和自主运行。此外,开发了一种改进的电流前馈以抑制瞬态期间直流母线电压的较大波动。另外,陷波滤波器已被用来有效地消除下垂控制单元的电感器电流中的二次谐波纹波分量,从而改善了电能质量。该控制方案的有效性在实验室原型上得到了验证,该原型包括两个双向dc-dc转换器,该转换器由两个可编程dc电源系统提供;一个带有电阻的dc负载,该电阻通过buck型dc-dc转换器连接到dc总线。三相不平衡交流负载。

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